A separately excited DC motor presents the following plate data: • armature voltage: V = 220 V %3D an • armature current: I = 30 A an speed: n_ = 3000 rpm • excitation voltage: V = 80V • excitation current: I = 4 A starting current: I = 'st Neglecting the no load losses and the saturation of the magnetic circuit, evaluate: Ra= 1) the armature resistance 2) the coefficent between e.m.f. and speed K. [Virad/s] [Nm] 3) the rated torque [%] 4) the rated efficiency [rpm] 5) the speed when the motor delivers 1.5 T (constant flux) $239032 % 71070s239032 01nid 070 8239032 01nldim0 008239032 II

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A separately excited DC motor presents the following plate data:
• armature voltage: V
= 220 V
an
• armature current: I
= 30 A
an
239032
speed: n = 3000 rpm
excitation voltage: V = 80 V
excitation current: I = 4 A
starting current:
= 180 A
Neglecting the
no
load losses and the
of the
circuit, evaluate:
1) the armature resistance
[0]
2) the coefficent between e.m.f. and speed
K =
[Virad/s]
3) the rated torque
T =
[Nm]
4) the rated efficiency
%3D
[%]
5) the speed when the motor delivers 1.5 T (constant flux)
n =
[rpm]
N 070 239032 01nld
239032 01nldime
08239032
010 s239032
01070 $239032
Transcribed Image Text:A separately excited DC motor presents the following plate data: • armature voltage: V = 220 V an • armature current: I = 30 A an 239032 speed: n = 3000 rpm excitation voltage: V = 80 V excitation current: I = 4 A starting current: = 180 A Neglecting the no load losses and the of the circuit, evaluate: 1) the armature resistance [0] 2) the coefficent between e.m.f. and speed K = [Virad/s] 3) the rated torque T = [Nm] 4) the rated efficiency %3D [%] 5) the speed when the motor delivers 1.5 T (constant flux) n = [rpm] N 070 239032 01nld 239032 01nldime 08239032 010 s239032 01070 $239032
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